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Metabolic network architecture and carbon source determine metabolite production costs, , , and . FEBS J., (2016)Pervasive Selection for Cooperative Cross-Feeding in Bacterial Communities., , , , , , , and . PLoS Comput. Biol., (2016)CASOP GS: Computing Intervention Strategies Targeted at Production Improvement in Genome-scale Metabolic Networks., , , , , , and . GCB, volume P-173 of LNI, page 71-80. GI, (2010)Computing Autocatalytic Sets to Unravel Inconsistencies in Metabolic Network Reconstructions., , , , and . Bioinformatics (Oxford, England), (Oct 5, 2014)Foraging Leaf-Cutting Ants Learn to Reject <i>Vitis vinifera</i> ssp. <i>vinifera</i> Plants that Emit Herbivore-Induced Volatiles, , , and . Journal of Chemical Ecology, 40 (6): 617--620 (2014)Metabolic network architecture and carbon source determine metabolite production costs., , , and . The FEBS journal, 283 (11): 2149--2163 (June 2016)Experimental evolution of bet hedging, , , , and . Nature, 462 (November): 90--94 (2009)Covariation and phenotypic integration in chemical communication displays: biosynthetic constraints and eco-evolutionary implications, , , , , , , , , and 30 other author(s). New Phytologist, 220 (3): 739--749 (March 2017)Covariation and phenotypic integration in chemical communication displays: biosynthetic constraints and eco-evolutionary implications, , , , , , , , , and 30 other author(s). New Phytologist, 220 (3): 739--749 (November 2018)